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2011 | OriginalPaper | Buchkapitel

Submarine Landslides and Slow Earthquakes: Monitoring Motion with GPS and Seafloor Geodesy

verfasst von : Benjamin A. Brooks, James H. Foster, Jeffrey J. McGuire, Mark Behn

Erschienen in: Extreme Environmental Events

Verlag: Springer New York

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Article Outline

Glossary
Definition of the Subject
Introduction
Monitoring Motion: Subaerial and Submarine Geodetic Methods
Data Analysis and Inversion
Discussion: Slow Earthquake and Submarine Landslide Process
Future Directions: Slow Earthquakes and Submarine Landslide Monitoring
Acknowledgments
Bibliography

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Literatur
1.
Zurück zum Zitat Dragert H, Wang K, James TS (2001) A silent slip event on the deeper Cascadia subduction interface. Science 292:1525–1528 Dragert H, Wang K, James TS (2001) A silent slip event on the deeper Cascadia subduction interface. Science 292:1525–1528
2.
Zurück zum Zitat Miller MM, Melbourne TI, Johnson DJ, Sumner WQ (2002) Periodic slow earthquakes from the Cascadia subduction zone. Science 295:2423 Miller MM, Melbourne TI, Johnson DJ, Sumner WQ (2002) Periodic slow earthquakes from the Cascadia subduction zone. Science 295:2423
3.
Zurück zum Zitat Ozakawa S, Murakami M, Tada T (2001) Time‐dependent inversion study of the slow thrust event in the Nankai trough subduction zone, southwestern Japan. J Geophys Res 106:782–802 Ozakawa S, Murakami M, Tada T (2001) Time‐dependent inversion study of the slow thrust event in the Nankai trough subduction zone, southwestern Japan. J Geophys Res 106:782–802
4.
Zurück zum Zitat Brooks BA, Foster JH, Bevis MF, Frazer LN, Wolfe CJ, Behn M (2006) Periodic slow earthquakes on the flank of Kilauea volcano, Hawai'i Earth and Planet Sci Lett 246:207–216 Brooks BA, Foster JH, Bevis MF, Frazer LN, Wolfe CJ, Behn M (2006) Periodic slow earthquakes on the flank of Kilauea volcano, Hawai'i Earth and Planet Sci Lett 246:207–216
5.
Zurück zum Zitat Cervelli P, Segall P, Johnson K, Lisowski M, Miklius A (2002) Sudden aseismic fault slip on the south flank of Kilauea volcano. Nature 415:1014–1018 Cervelli P, Segall P, Johnson K, Lisowski M, Miklius A (2002) Sudden aseismic fault slip on the south flank of Kilauea volcano. Nature 415:1014–1018
6.
Zurück zum Zitat Segall P, Desmarais EK, Shelly D, Miklius A, Cervelli P (2006) Earthquakes Triggered by Silent Slip Events on Kilauea Volcano, Hawaii. Nature 442:71–74 Segall P, Desmarais EK, Shelly D, Miklius A, Cervelli P (2006) Earthquakes Triggered by Silent Slip Events on Kilauea Volcano, Hawaii. Nature 442:71–74
7.
Zurück zum Zitat Spiess FN et al (1998) Precise GPS/Acoustic positioning of seafloor reference points for tectonic studies. Phys Earth Planet Inter 108:101–112 Spiess FN et al (1998) Precise GPS/Acoustic positioning of seafloor reference points for tectonic studies. Phys Earth Planet Inter 108:101–112
8.
Zurück zum Zitat Moore JG et al (1989) Prodigious Submarine Landslides on the Hawaiian Ridge. J Geophys Res 94:17465–17484 Moore JG et al (1989) Prodigious Submarine Landslides on the Hawaiian Ridge. J Geophys Res 94:17465–17484
9.
Zurück zum Zitat Krastel S et al (2001) Submarine landslides around the Canary Islands. J Geophys Res 106:3977–3997 Krastel S et al (2001) Submarine landslides around the Canary Islands. J Geophys Res 106:3977–3997
10.
Zurück zum Zitat Carracedo JC, Day SJ, Guillou H, Perez Torrado FJ (1999) Giant Quaternary landslides in the evolution of La Palma and El Hierro, Canary Islands. J Volcan Geotherm Res 94:169–190 Carracedo JC, Day SJ, Guillou H, Perez Torrado FJ (1999) Giant Quaternary landslides in the evolution of La Palma and El Hierro, Canary Islands. J Volcan Geotherm Res 94:169–190
11.
Zurück zum Zitat Day SJ, Heleno da Silva SIN, Fonseca JFBD (1999) A past giant lateral collapse and present‐day flank instability of Fogo, Cape Verde Islands. J Volcan Geotherm Res 94:191–218 Day SJ, Heleno da Silva SIN, Fonseca JFBD (1999) A past giant lateral collapse and present‐day flank instability of Fogo, Cape Verde Islands. J Volcan Geotherm Res 94:191–218
12.
Zurück zum Zitat Tucholke B (1992) Massive submarine rockslide in the rift‐valley wall of the Mid‐Atlantic Ridge. Geology 20:129–132 Tucholke B (1992) Massive submarine rockslide in the rift‐valley wall of the Mid‐Atlantic Ridge. Geology 20:129–132
13.
Zurück zum Zitat Driscoll N, Weissel JK, Goff JA (2000) Potential for large-scale submarine slope failure and tsunami generation along the US Mid‐Atlantic coast. Geology 28:407–410 Driscoll N, Weissel JK, Goff JA (2000) Potential for large-scale submarine slope failure and tsunami generation along the US Mid‐Atlantic coast. Geology 28:407–410
14.
Zurück zum Zitat Moore JG (1964) Giant submarine landslides on the Hawaiian Ridge. US Geol Survey Prof Paper D 501:95–98 Moore JG (1964) Giant submarine landslides on the Hawaiian Ridge. US Geol Survey Prof Paper D 501:95–98
15.
Zurück zum Zitat Moore JG, Fiske RS (1969) Volcanic substructure inferred from dredge samples and ocean‐bottom photographs, Hawaii. Geol Soc Am Bull 80:1191–1202 Moore JG, Fiske RS (1969) Volcanic substructure inferred from dredge samples and ocean‐bottom photographs, Hawaii. Geol Soc Am Bull 80:1191–1202
16.
Zurück zum Zitat Marti J, Hurlimann M, Ablay G, Gudmundsson A (1997) Vertical and lateral collapses on Tenerife (Canary Islands) and other volcanic ocean islands. Geology 25:879–882 Marti J, Hurlimann M, Ablay G, Gudmundsson A (1997) Vertical and lateral collapses on Tenerife (Canary Islands) and other volcanic ocean islands. Geology 25:879–882
17.
Zurück zum Zitat Ward SN, Day S (2001) Cumbre Vieja Volcano – Potential collapse and tsunami at La Palma, Canary Islands. Geophys Res Lett 28:3397–3400 Ward SN, Day S (2001) Cumbre Vieja Volcano – Potential collapse and tsunami at La Palma, Canary Islands. Geophys Res Lett 28:3397–3400
18.
Zurück zum Zitat Clague DA, Moore JG (2002) The proximal part of the giant submarine Wailau landslide, Molokai, Hawaii. J Volcan Geotherm Res 113:259–287 Clague DA, Moore JG (2002) The proximal part of the giant submarine Wailau landslide, Molokai, Hawaii. J Volcan Geotherm Res 113:259–287
19.
Zurück zum Zitat Coombs ML, Clague DA, Moore GF, Cousens BL (2004) Growth and collapse of Waianae Volcano, Hawaii, as revealed by exploration of its submarine flanks. Geochem Geophys Geosyst 5: doi:10.1029/2004GC000717 Coombs ML, Clague DA, Moore GF, Cousens BL (2004) Growth and collapse of Waianae Volcano, Hawaii, as revealed by exploration of its submarine flanks. Geochem Geophys Geosyst 5: doi:​10.​1029/​2004GC000717
20.
Zurück zum Zitat Morgan JK, Clague DA, Borchers DC, Davis AS, Milliken KL (2007) Mauna Loa's submarine western flank: Landsliding, deep volcanic spreading, and hydrothermal alteration. Geochem Geophys Geosyst 8:Q05002; doi:10.1029/2006GC001420 Morgan JK, Clague DA, Borchers DC, Davis AS, Milliken KL (2007) Mauna Loa's submarine western flank: Landsliding, deep volcanic spreading, and hydrothermal alteration. Geochem Geophys Geosyst 8:Q05002; doi:​10.​1029/​2006GC001420
21.
Zurück zum Zitat Morgan JK, Moore GF, Clague DA (2003) Slope failure and volcanic spreading along the submarine south flank of Kilauea volcano, Hawaii. J Geophys Res 108:2415, doi:10.1029/2003JB002411 Morgan JK, Moore GF, Clague DA (2003) Slope failure and volcanic spreading along the submarine south flank of Kilauea volcano, Hawaii. J Geophys Res 108:2415, doi:​10.​1029/​2003JB002411
22.
Zurück zum Zitat Dieterich J (1988) Growth and Persistence of Hawaiian Volcanic Rift Zones. J Geophys Res 93:4258–4270 Dieterich J (1988) Growth and Persistence of Hawaiian Volcanic Rift Zones. J Geophys Res 93:4258–4270
23.
Zurück zum Zitat Iverson RM (1995) Can magma‐injection and groundwater forces cause massive landslides on Hawaiian volcanoes? J Volcan Geotherm Res 66:295–308 Iverson RM (1995) Can magma‐injection and groundwater forces cause massive landslides on Hawaiian volcanoes? J Volcan Geotherm Res 66:295–308
24.
Zurück zum Zitat Cannon EC, Bürgmann R, Owen SE (2001) Shallow normal faulting and block rotation associated with the 1975 Kalapana earthquake, Kilauea volcano, Hawaii. Bull Seismol Soc Am 91:1553–1562 Cannon EC, Bürgmann R, Owen SE (2001) Shallow normal faulting and block rotation associated with the 1975 Kalapana earthquake, Kilauea volcano, Hawaii. Bull Seismol Soc Am 91:1553–1562
25.
Zurück zum Zitat Moore JG, Normark WR, Holcomb RT (1994) Giant Hawaiian landslides. Ann Rev Earth Planet Sci 22:119–144 Moore JG, Normark WR, Holcomb RT (1994) Giant Hawaiian landslides. Ann Rev Earth Planet Sci 22:119–144
26.
Zurück zum Zitat Bardet J-P, Synolakis CE, Davies HL, Imamura F, Okal EA (2003) Landslide Tsunamis: Recent Findings and Research Directions. Pure Appl Geophys 160:1793–1809 Bardet J-P, Synolakis CE, Davies HL, Imamura F, Okal EA (2003) Landslide Tsunamis: Recent Findings and Research Directions. Pure Appl Geophys 160:1793–1809
27.
Zurück zum Zitat Hasegawa HS, Kanamori H (1987) Source Mechanism of the Magnitude 7.2 Grand Banks Earthquake of November 18, 1929: Double‐couple or Submarine Landslide? Bull Seismol Soc Am 77:1984–2004 Hasegawa HS, Kanamori H (1987) Source Mechanism of the Magnitude 7.2 Grand Banks Earthquake of November 18, 1929: Double‐couple or Submarine Landslide? Bull Seismol Soc Am 77:1984–2004
28.
Zurück zum Zitat Yeh H et al (1993) The Flores Island Tsunami. Eos, Transactions, Am Geophys Union 74:371–373 Yeh H et al (1993) The Flores Island Tsunami. Eos, Transactions, Am Geophys Union 74:371–373
29.
Zurück zum Zitat Imamura F, Synolakis CE, Titov V, Lee S (1995) Field Survey of the 1994 Mindoro Island, Phillipines Tsunami. Pure Appl Geophys 144:875–890 Imamura F, Synolakis CE, Titov V, Lee S (1995) Field Survey of the 1994 Mindoro Island, Phillipines Tsunami. Pure Appl Geophys 144:875–890
30.
Zurück zum Zitat Geist EL (2000) Origin of the 17 July 1998 Papua New Guinea Tsunami: Earthquake or Landslide? Seismol Res Lett 71:344–351 Geist EL (2000) Origin of the 17 July 1998 Papua New Guinea Tsunami: Earthquake or Landslide? Seismol Res Lett 71:344–351
31.
Zurück zum Zitat Yalciner AC et al (1999) Field Survey of the 1999 Izmit Tsunami and Modeling Effort of New Tsunami Generation Mechanism. Eos, Transactions, Am Geophys Union F751(abstract):80 Yalciner AC et al (1999) Field Survey of the 1999 Izmit Tsunami and Modeling Effort of New Tsunami Generation Mechanism. Eos, Transactions, Am Geophys Union F751(abstract):80
32.
Zurück zum Zitat Caminade JP et al (2001) Vanuatu Earthquake and Tsunami Caused Much Damage, Few Casualties. Eos Trans Am Geophys Union 81:641,646–647 Caminade JP et al (2001) Vanuatu Earthquake and Tsunami Caused Much Damage, Few Casualties. Eos Trans Am Geophys Union 81:641,646–647
33.
Zurück zum Zitat Nettles M, Ekstrom G (2004) Long‐Period Source Characteristics of the 1975 Kalapana, Hawaii, Earthquake. Bull Seismol Soc Am 94:422–429 Nettles M, Ekstrom G (2004) Long‐Period Source Characteristics of the 1975 Kalapana, Hawaii, Earthquake. Bull Seismol Soc Am 94:422–429
34.
Zurück zum Zitat Tilling RI et al (1976) Earthquake and Related Catastrophic Events, Island of Hawaii, November 29, 1975: A preliminary report. US Geol Surv Circ 740:33 Tilling RI et al (1976) Earthquake and Related Catastrophic Events, Island of Hawaii, November 29, 1975: A preliminary report. US Geol Surv Circ 740:33
36.
Zurück zum Zitat Okal EA, Synolakis CE (2003) A Theoretical Comparison of Tsunamis from Dislocations and Landslides. Pure Appl Geophys 160:2177–2188 Okal EA, Synolakis CE (2003) A Theoretical Comparison of Tsunamis from Dislocations and Landslides. Pure Appl Geophys 160:2177–2188
37.
Zurück zum Zitat Ward S (2001) Landslide tsunami. J Geophys Res 106:11201–11215 Ward S (2001) Landslide tsunami. J Geophys Res 106:11201–11215
38.
Zurück zum Zitat Murty TS (2003) Tsunami wave height dependence on landslide volume. Pure Appl Geophys 160(10–11):2147–2153 Murty TS (2003) Tsunami wave height dependence on landslide volume. Pure Appl Geophys 160(10–11):2147–2153
39.
Zurück zum Zitat Fine IV, Rabinovich AB, Bornhold BD, Thomson RE, Kulikov EA (2005) The Grand Banks landslide‐generated tsunami of November 18, 1929, preliminary analysis and numerical modeling. Mar Geol 215:45–57 Fine IV, Rabinovich AB, Bornhold BD, Thomson RE, Kulikov EA (2005) The Grand Banks landslide‐generated tsunami of November 18, 1929, preliminary analysis and numerical modeling. Mar Geol 215:45–57
40.
Zurück zum Zitat Phillips KA, Chadwell CD, Hildebrand JA (2008) Vertical deformation measurements on the submerged south flank of Kilauea volcano, Hawai`i reveal seafloor motion associated with volcanic collapse. J Geophys Res 113:B05106; doi:10.1029/2007JB005124 Phillips KA, Chadwell CD, Hildebrand JA (2008) Vertical deformation measurements on the submerged south flank of Kilauea volcano, Hawai`i reveal seafloor motion associated with volcanic collapse. J Geophys Res 113:B05106; doi:​10.​1029/​2007JB005124
41.
Zurück zum Zitat Owen S et al (2000) Rapid deformation of Kilauea Volcano: Global Positioning System measurements between 1990 and 1996. J Geophys Res B: Solid Earth 105:18983–18998 Owen S et al (2000) Rapid deformation of Kilauea Volcano: Global Positioning System measurements between 1990 and 1996. J Geophys Res B: Solid Earth 105:18983–18998
42.
Zurück zum Zitat Delaney PT et al (1998) Volcanic spreading at Kilauea, 1976–1996. J Geophys Res 103:18003–18023 Delaney PT et al (1998) Volcanic spreading at Kilauea, 1976–1996. J Geophys Res 103:18003–18023
43.
Zurück zum Zitat Kanamori H, Stewart GS (1979) A slow earthquake. Phys Earth Planet Inter 18:167–175 Kanamori H, Stewart GS (1979) A slow earthquake. Phys Earth Planet Inter 18:167–175
44.
Zurück zum Zitat Sacks IS, Suyehiro S, Linde AT, Snoke JA (1978) Slow earthquakes and stress redistribution. Nature 275:599–602 Sacks IS, Suyehiro S, Linde AT, Snoke JA (1978) Slow earthquakes and stress redistribution. Nature 275:599–602
45.
Zurück zum Zitat Ihmle PF, Jordan TH (1994) Teleseismic search for slow precursors to large earthquakes. Science 266:1547–1551 Ihmle PF, Jordan TH (1994) Teleseismic search for slow precursors to large earthquakes. Science 266:1547–1551
46.
Zurück zum Zitat Kedar S, Watada S, Tanimoto T (1994) The 1989 Macquarie Ridge earthquake: Seismic moment estimation from long‐period free oscillations. J Geophys Res 99:17893–17908 Kedar S, Watada S, Tanimoto T (1994) The 1989 Macquarie Ridge earthquake: Seismic moment estimation from long‐period free oscillations. J Geophys Res 99:17893–17908
47.
Zurück zum Zitat McGuire JJ, Ihmle PF, Jordan TH (1996) Time‐domain observations of a slow precursor to the 1994 Romanche transform earthquake. Science 274:82–85 McGuire JJ, Ihmle PF, Jordan TH (1996) Time‐domain observations of a slow precursor to the 1994 Romanche transform earthquake. Science 274:82–85
48.
Zurück zum Zitat Kanamori H, Cipar JJ (1974) Focal process of the great Chilean earthquake May 22:1960. Phys Earth Planet Inter 9:128–136 Kanamori H, Cipar JJ (1974) Focal process of the great Chilean earthquake May 22:1960. Phys Earth Planet Inter 9:128–136
49.
Zurück zum Zitat Burgmann R et al (2001) Rapid aseismic moment release following the 5 December, 1997 Kronotsky, Kamchatka, earhquake. Geophys Res Lett 28:1331–1334 Burgmann R et al (2001) Rapid aseismic moment release following the 5 December, 1997 Kronotsky, Kamchatka, earhquake. Geophys Res Lett 28:1331–1334
50.
Zurück zum Zitat Heki K, Miyazaki S-I, Tsuji H (1997) Silent fault slip following an interplate thrust earthquake at the Japan Trench. Nature 386:595–598 Heki K, Miyazaki S-I, Tsuji H (1997) Silent fault slip following an interplate thrust earthquake at the Japan Trench. Nature 386:595–598
51.
Zurück zum Zitat Segall P, Burgmann R, Matthews M (2000) Time‐dependent triggered afterslip following the 1989 Loma Prieta earthquake. J Geophys Res B: Solid Earth 105:5615–5634 Segall P, Burgmann R, Matthews M (2000) Time‐dependent triggered afterslip following the 1989 Loma Prieta earthquake. J Geophys Res B: Solid Earth 105:5615–5634
52.
Zurück zum Zitat Linde AT, Gladwin MT, Johnston MJS, Gwyther RL, Bilham RG (1996) A slow earthquake sequence on the San Andreas Fault. Nature (London) 383:65–68 Linde AT, Gladwin MT, Johnston MJS, Gwyther RL, Bilham RG (1996) A slow earthquake sequence on the San Andreas Fault. Nature (London) 383:65–68
53.
Zurück zum Zitat Gwyther RL, Gladwin MT, Mee M, Hart RHG (1996) Anomalous shear strain at Parkfield during 1993–94. Geophys Res Letters 23:2425–2428 Gwyther RL, Gladwin MT, Mee M, Hart RHG (1996) Anomalous shear strain at Parkfield during 1993–94. Geophys Res Letters 23:2425–2428
54.
Zurück zum Zitat Gao SS, Silver PG, Linde AT (2000) Analysis of deformation data at Parkfield, California: Detection of a long-term strain transient. J Geophys Res 105:2955–2967 Gao SS, Silver PG, Linde AT (2000) Analysis of deformation data at Parkfield, California: Detection of a long-term strain transient. J Geophys Res 105:2955–2967
55.
Zurück zum Zitat Lienkaemper JL, Galehouse JS, Simpson RW (1997) Creep Response of the Hayward Fault to Stress Changes Caused by the Loma Prieta Earthquake. Science 276:2014–2016 Lienkaemper JL, Galehouse JS, Simpson RW (1997) Creep Response of the Hayward Fault to Stress Changes Caused by the Loma Prieta Earthquake. Science 276:2014–2016
56.
Zurück zum Zitat Kanamori H, Kikuchi M (1993) The 1992 Nicaragua earthquake: a slow tsunami earthquake associate with subducted sediments. Nature 361:714–716 Kanamori H, Kikuchi M (1993) The 1992 Nicaragua earthquake: a slow tsunami earthquake associate with subducted sediments. Nature 361:714–716
57.
Zurück zum Zitat Lowry AR, Larson KM, Kostoglodov V, Bilham R (2001) Transient fault slip in Guerrero, southern Mexico. Geophys Res Lett 28:3753–3756 Lowry AR, Larson KM, Kostoglodov V, Bilham R (2001) Transient fault slip in Guerrero, southern Mexico. Geophys Res Lett 28:3753–3756
58.
Zurück zum Zitat Lowry AR (2006) Resonant slow fault slip in subduction zones forced by climatic load stress. Nature 442(7104):802–805 Lowry AR (2006) Resonant slow fault slip in subduction zones forced by climatic load stress. Nature 442(7104):802–805
59.
Zurück zum Zitat Ito Y, Obara K, Shiomi K, Sekine S, Hirose H (2006) Slow earthquakes coincident with episodic tremors and slow slip events. Science 26:503–506 Ito Y, Obara K, Shiomi K, Sekine S, Hirose H (2006) Slow earthquakes coincident with episodic tremors and slow slip events. Science 26:503–506
60.
Zurück zum Zitat Rogers G, Dragert H (2003) Episodic Tremor and slip on the Cascadia Subduction Zone: The chatter of silent slip. Science 300:1942–1943 Rogers G, Dragert H (2003) Episodic Tremor and slip on the Cascadia Subduction Zone: The chatter of silent slip. Science 300:1942–1943
62.
Zurück zum Zitat Aki K, Fehler M, Das S (1977) Source mechanism of volcanic tremors: fluid driven crack models and their application to the 1963 Kilauea eruption. J Volcan Geotherm Res 141:259–287 Aki K, Fehler M, Das S (1977) Source mechanism of volcanic tremors: fluid driven crack models and their application to the 1963 Kilauea eruption. J Volcan Geotherm Res 141:259–287
63.
Zurück zum Zitat Rubenstein JL et al (2007) Non‐volcanic tremor driven by large transient shear stresses. Nature 448:579–582 Rubenstein JL et al (2007) Non‐volcanic tremor driven by large transient shear stresses. Nature 448:579–582
65.
Zurück zum Zitat Peacock S, Wang K (1999) Seismic Consequences of Warm Versus Cool Subduction Metamorphism: Examples from Southwest and Northeast Japan. Science 286:937–939 Peacock S, Wang K (1999) Seismic Consequences of Warm Versus Cool Subduction Metamorphism: Examples from Southwest and Northeast Japan. Science 286:937–939
66.
Zurück zum Zitat Julian B (2002) Seismological detection of slab metamorphism. Science 296:1625–1626 Julian B (2002) Seismological detection of slab metamorphism. Science 296:1625–1626
67.
Zurück zum Zitat Kato N (2004) Interaction of slip on asperities: Numerical simulation of seismic cycles on a two‐dimensional planar fault with nonuniform frictional property. J Geophys Res 109:B12306; doi:10.1029/2004JB003001 Kato N (2004) Interaction of slip on asperities: Numerical simulation of seismic cycles on a two‐dimensional planar fault with nonuniform frictional property. J Geophys Res 109:B12306; doi:​10.​1029/​2004JB003001
68.
Zurück zum Zitat Liu Y, Rice JR (2005) Aseismic slip transients emerge spontaneously in three‐dimensional rate and state modeling of subduction earthquake sequences. J Geophys Res 110:B08307; doi:10.1029/2004JB003424 Liu Y, Rice JR (2005) Aseismic slip transients emerge spontaneously in three‐dimensional rate and state modeling of subduction earthquake sequences. J Geophys Res 110:B08307; doi:​10.​1029/​2004JB003424
69.
Zurück zum Zitat Miyazaki S, McGuire JJ, Segall P (2003) A transient subduction zone slip episode in southwest Japan observed by the nationwide GPS array. J Geophys Res 108(B2):2087; doi:10.1029/2001JB000456 Miyazaki S, McGuire JJ, Segall P (2003) A transient subduction zone slip episode in southwest Japan observed by the nationwide GPS array. J Geophys Res 108(B2):2087; doi:​10.​1029/​2001JB000456
71.
Zurück zum Zitat Freymueller J et al (2001) The great alaska ‘earthquake’ of 1998–2001. EOS Trans Am Geophys Un 82(47) Freymueller J et al (2001) The great alaska ‘earthquake’ of 1998–2001. EOS Trans Am Geophys Un 82(47)
72.
Zurück zum Zitat Hirose H, Hirahara K, Kimata F, Fujii F, Miyazaki S (1999) A slow thrust slip event following the two 1996 Hyuganada earthquakes beneath the Bungo Channel, southwest Japan. Geophys Res Lett 26:3237–3240 Hirose H, Hirahara K, Kimata F, Fujii F, Miyazaki S (1999) A slow thrust slip event following the two 1996 Hyuganada earthquakes beneath the Bungo Channel, southwest Japan. Geophys Res Lett 26:3237–3240
73.
Zurück zum Zitat Baum RL, Reid ME (1995) Geology, hydrology, and mechanics of a slow-moving, clay-rich landslide, Honolulu, Hawaii. In: Haneberg WC, Anderson SA (eds) Clay and Shale Slope Instability. Geol. Soc. of Am, Boulder, Colorado Baum RL, Reid ME (1995) Geology, hydrology, and mechanics of a slow-moving, clay-rich landslide, Honolulu, Hawaii. In: Haneberg WC, Anderson SA (eds) Clay and Shale Slope Instability. Geol. Soc. of Am, Boulder, Colorado
74.
Zurück zum Zitat Malet JP, Maquaire O, Calais E (2002) The use of Global Positioning System techniques for the continuous monitoring of landslides: application to the Super-Sauze earthflow (Alpes-de-Haute‐Provence, France). Geomorphology 43:33–54 Malet JP, Maquaire O, Calais E (2002) The use of Global Positioning System techniques for the continuous monitoring of landslides: application to the Super-Sauze earthflow (Alpes-de-Haute‐Provence, France). Geomorphology 43:33–54
75.
Zurück zum Zitat Hilley GE et al (2004) Dynamics of slow-moving landslides from permanent scatterer analysis. Science 304(5679):1952–1955 Hilley GE et al (2004) Dynamics of slow-moving landslides from permanent scatterer analysis. Science 304(5679):1952–1955
76.
Zurück zum Zitat Chadwell CD et al (1999) No spreading across the southern Juan de Fuca Ridge axial cleft during 1994–1996. Geophys Res Lett 26:2525–2528 Chadwell CD et al (1999) No spreading across the southern Juan de Fuca Ridge axial cleft during 1994–1996. Geophys Res Lett 26:2525–2528
77.
Zurück zum Zitat Chadwick WW, Embley RW, Milburn HR, Meining C, Stapp M (1999) Evidence for deformation associated with the 1998 eruption of Axial Volcano, Juan de Fuca Ridge, from acoustic extensometer measurements. Geophys Res Lett 26:3441–3444 Chadwick WW, Embley RW, Milburn HR, Meining C, Stapp M (1999) Evidence for deformation associated with the 1998 eruption of Axial Volcano, Juan de Fuca Ridge, from acoustic extensometer measurements. Geophys Res Lett 26:3441–3444
78.
Zurück zum Zitat Gagnon K, Chadwell CD, Norabuena E (2005) Measuring the onset of locking in the Peru-Chile trench with GPS and acoustic measurements. Nature 434:205–208 Gagnon K, Chadwell CD, Norabuena E (2005) Measuring the onset of locking in the Peru-Chile trench with GPS and acoustic measurements. Nature 434:205–208
79.
Zurück zum Zitat Sweeney AD, Chadwell CD, Hildebrand JA, Spiess FN (2005) Centimeter‐level positioning of seafloor acoustic transponders from a deeply‐towed interrogator. Mar Geol 28:39–70, doi:10.1080/01490410590884502 Sweeney AD, Chadwell CD, Hildebrand JA, Spiess FN (2005) Centimeter‐level positioning of seafloor acoustic transponders from a deeply‐towed interrogator. Mar Geol 28:39–70, doi:​10.​1080/​0149041059088450​2
80.
Zurück zum Zitat Cervelli P, Murray MH, Segall P, Aoki Y, Kato T (2001) Estimating source parameters from deformation data, with an application to the March 1997 earthquake swarm off the Izu Peninsula, Japan J Geophys Res 106:11217–11237 Cervelli P, Murray MH, Segall P, Aoki Y, Kato T (2001) Estimating source parameters from deformation data, with an application to the March 1997 earthquake swarm off the Izu Peninsula, Japan J Geophys Res 106:11217–11237
81.
Zurück zum Zitat Dixon TH (1991) An Introduction to the Global Positioning System and Some Geological Applications. Rev Geophys 29:249–276 Dixon TH (1991) An Introduction to the Global Positioning System and Some Geological Applications. Rev Geophys 29:249–276
82.
Zurück zum Zitat Hager BH, King RW, Murray MH (1991) Measurement of Crustal Deformation Using the Global Positioning System. Ann Rev Earth Planet Sci 19:351–382 Hager BH, King RW, Murray MH (1991) Measurement of Crustal Deformation Using the Global Positioning System. Ann Rev Earth Planet Sci 19:351–382
83.
Zurück zum Zitat Segall P, Davis JL (1997) GPS applications for geodynamics and earthquake studies. Ann Rev Earth Planet Sci 25:301–336 Segall P, Davis JL (1997) GPS applications for geodynamics and earthquake studies. Ann Rev Earth Planet Sci 25:301–336
84.
Zurück zum Zitat Eckl MC, Snay RA, Soler T, Cline MW, Mader GL (2001) Accuracy of GPS‐derived relative positions as a function of interstation distance and observing‐session duration. J Geodesy 75:633–640 Eckl MC, Snay RA, Soler T, Cline MW, Mader GL (2001) Accuracy of GPS‐derived relative positions as a function of interstation distance and observing‐session duration. J Geodesy 75:633–640
85.
Zurück zum Zitat Leick A (2004) GPS satellite surveying. Wiley, Hoboken Leick A (2004) GPS satellite surveying. Wiley, Hoboken
86.
Zurück zum Zitat Warnant R, Kutiev I, Marinov P, Bavier M, Lejeune S (2007) Ionospheric and geomagnetic conditions during periods of degraded GPS position accuracy: 1. Monitoring variability in TEC which degrades the accuarcy of Real-Time Kinematic GPS applications. Adv Space Res 39:875–880 Warnant R, Kutiev I, Marinov P, Bavier M, Lejeune S (2007) Ionospheric and geomagnetic conditions during periods of degraded GPS position accuracy: 1. Monitoring variability in TEC which degrades the accuarcy of Real-Time Kinematic GPS applications. Adv Space Res 39:875–880
87.
Zurück zum Zitat Bock Y, Nikolaidis RM, de Jonge PJ, Bevis M (2000) Instantaneous geodetic positioning at medium distances with the Global Positioning System. J Geophys Res 105:28233–28253 Bock Y, Nikolaidis RM, de Jonge PJ, Bevis M (2000) Instantaneous geodetic positioning at medium distances with the Global Positioning System. J Geophys Res 105:28233–28253
89.
Zurück zum Zitat Brooks BA, Foster JF, Miklius A, Schenewerk M (2005) Extended GPS Network and Near Real-Time processing, Mauna Loa Volcano, Hawai`i. Eos Trans AGU, 86:Fall Meet Suppl Brooks BA, Foster JF, Miklius A, Schenewerk M (2005) Extended GPS Network and Near Real-Time processing, Mauna Loa Volcano, Hawai`i. Eos Trans AGU, 86:Fall Meet Suppl
91.
Zurück zum Zitat Mader G, MacKay JR (1996) Geoscience Laboratory, Office of Ocean and Earth Sciences NOS, NOAA. Silver Spring, Maryland Mader G, MacKay JR (1996) Geoscience Laboratory, Office of Ocean and Earth Sciences NOS, NOAA. Silver Spring, Maryland
92.
Zurück zum Zitat McCarthy D, Petit G (eds) (2003) IERS Technical Note 32 McCarthy D, Petit G (eds) (2003) IERS Technical Note 32
93.
Zurück zum Zitat Cartwright DE, Edden AC (1973) Corrected tables of tidal harmonics. Geophys J R Astron Soc 33:253–264 Cartwright DE, Edden AC (1973) Corrected tables of tidal harmonics. Geophys J R Astron Soc 33:253–264
94.
Zurück zum Zitat Cartwright DE, Taylor RJ (1971) New computation in the tide‐generating potential. Geophys J R Astron Soc 23:45–74 Cartwright DE, Taylor RJ (1971) New computation in the tide‐generating potential. Geophys J R Astron Soc 23:45–74
95.
Zurück zum Zitat Foster J, Bevis M, Chen Y-L, Businger S, Zhang Y (2003) The Ka`u Storm (Nov 2000): Imaging precipitable water using GPS. J Geophys Res 108:4585 Foster J, Bevis M, Chen Y-L, Businger S, Zhang Y (2003) The Ka`u Storm (Nov 2000): Imaging precipitable water using GPS. J Geophys Res 108:4585
96.
Zurück zum Zitat Segall P, Matthews M (1997) Time dependent inversion of geodetic data. J Geohys Res 102:22391–22409 Segall P, Matthews M (1997) Time dependent inversion of geodetic data. J Geohys Res 102:22391–22409
97.
Zurück zum Zitat Flores A, Ruffini G, Rius A (2000) 4D tropospheric tomography using GPS slant wet delays. Ann Geophys 18:223–234 Flores A, Ruffini G, Rius A (2000) 4D tropospheric tomography using GPS slant wet delays. Ann Geophys 18:223–234
98.
Zurück zum Zitat Spiess FN (1985) Analysis of a possible sea floor strain measurement system. Mar Geodesy 9:385–398 Spiess FN (1985) Analysis of a possible sea floor strain measurement system. Mar Geodesy 9:385–398
99.
Zurück zum Zitat Zumberge M (1997) Precise Optical Path Length Measurement Through an Optical Fiber: Application to Seafloor Strain Monitoring. Ocean Eng 24:532–542 Zumberge M (1997) Precise Optical Path Length Measurement Through an Optical Fiber: Application to Seafloor Strain Monitoring. Ocean Eng 24:532–542
100.
Zurück zum Zitat Zumberge M et al (2006) In: Nadim F, Pottler R, Einstein H, Klapperich H, Kramer S (eds) 2006 ECI Conference on Geohazards. Lillehammer, Norway Zumberge M et al (2006) In: Nadim F, Pottler R, Einstein H, Klapperich H, Kramer S (eds) 2006 ECI Conference on Geohazards. Lillehammer, Norway
101.
Zurück zum Zitat Okada Y (1985) Surface deformation due to shear and tensile faults in a half-space. Bull Seismol Soc Am 75:1135–1154 Okada Y (1985) Surface deformation due to shear and tensile faults in a half-space. Bull Seismol Soc Am 75:1135–1154
102.
Zurück zum Zitat Steketee JA (1958) Some Geophysical Applications of the Elasticity Theory of Dislocations. Can J Phys 36:1168–1198 Steketee JA (1958) Some Geophysical Applications of the Elasticity Theory of Dislocations. Can J Phys 36:1168–1198
103.
Zurück zum Zitat Menke W (1984) Geophysical Data Analysis: Discrete Inverse Theory. Academic Press Inc, San Diego Menke W (1984) Geophysical Data Analysis: Discrete Inverse Theory. Academic Press Inc, San Diego
104.
Zurück zum Zitat Brooks BA, Frazer LN (2005) Importance reweighting reduces dependence on temperature in Gibbs samplers: an application to the coseismic geodetic inverse problem. Geophys J Int 161:12–21 Brooks BA, Frazer LN (2005) Importance reweighting reduces dependence on temperature in Gibbs samplers: an application to the coseismic geodetic inverse problem. Geophys J Int 161:12–21
105.
Zurück zum Zitat Mosegaard K, Sambridge M (2002) Monte Carlo analysis of inverse problems. Inverse Probl 18:29–54 Mosegaard K, Sambridge M (2002) Monte Carlo analysis of inverse problems. Inverse Probl 18:29–54
106.
Zurück zum Zitat Kirkpatrick S, Gelatt CDJ, Vecchi MP (1983) Optimization by simulated annealing. Science 220:671–680 Kirkpatrick S, Gelatt CDJ, Vecchi MP (1983) Optimization by simulated annealing. Science 220:671–680
107.
Zurück zum Zitat Hudnut KW et al (1996) Co‐Seismic Displacements of the 1994 Northridge, California, Earthquake. Bull Seismol Soc Am 86:19–36 Hudnut KW et al (1996) Co‐Seismic Displacements of the 1994 Northridge, California, Earthquake. Bull Seismol Soc Am 86:19–36
108.
Zurück zum Zitat Dieterich J, Cayol V, Okubo PG (2000) The use of earthquake rate changes as a stress meter at Kilauea volcano. Nature 408:457–460 Dieterich J, Cayol V, Okubo PG (2000) The use of earthquake rate changes as a stress meter at Kilauea volcano. Nature 408:457–460
109.
Zurück zum Zitat Stein RS (1999) The role of stress transfer in earthquake occurrence. Nature 402:605–609 Stein RS (1999) The role of stress transfer in earthquake occurrence. Nature 402:605–609
110.
Zurück zum Zitat Hansen S, Thurber CH, Mandernach MJ, Haslinger F, Doran C (2004) Seismic velocity and attenuation structure of the East Rift Zone and South Flank of Kilauea Volcano, Hawaii. Bull Seismol Soc Am 94:1430–1440 Hansen S, Thurber CH, Mandernach MJ, Haslinger F, Doran C (2004) Seismic velocity and attenuation structure of the East Rift Zone and South Flank of Kilauea Volcano, Hawaii. Bull Seismol Soc Am 94:1430–1440
111.
Zurück zum Zitat Got J-L, Okubo PG (2003) New insights into Kilauea's volcano dynamics brought by large-scale relative relocation of microearthquakes. J Geophys Res 108(B7):2337; doi:10.1029/2002JB002060 Got J-L, Okubo PG (2003) New insights into Kilauea's volcano dynamics brought by large-scale relative relocation of microearthquakes. J Geophys Res 108(B7):2337; doi:​10.​1029/​2002JB002060
112.
Zurück zum Zitat Wolfe CJ, Brooks BA, Foster JH, Okubo PG (2007) Microearthquake streaks and seismicity triggered by slow earthquakes on the mobile south flank of Kilauea Volcano, Hawai`i. Geophys Res Lett (In press) Wolfe CJ, Brooks BA, Foster JH, Okubo PG (2007) Microearthquake streaks and seismicity triggered by slow earthquakes on the mobile south flank of Kilauea Volcano, Hawai`i. Geophys Res Lett (In press)
113.
Zurück zum Zitat McGuire JJ, Segall P (2003) Imaging of aseismic fault slip transients recorded by dense geodetic networks. Geophys J Int 155:778–788 McGuire JJ, Segall P (2003) Imaging of aseismic fault slip transients recorded by dense geodetic networks. Geophys J Int 155:778–788
114.
Zurück zum Zitat Scholz CJ (1998) Earthquakes and friction laws. Nature 391:37–42 Scholz CJ (1998) Earthquakes and friction laws. Nature 391:37–42
115.
Zurück zum Zitat Perfettini H, Schmittbuhl J, Rice JR, Cocco M (2001) Frictional response induced by time‐dependent fluctuations of the normal loading. J Geophys Res 106:435–438 Perfettini H, Schmittbuhl J, Rice JR, Cocco M (2001) Frictional response induced by time‐dependent fluctuations of the normal loading. J Geophys Res 106:435–438
116.
117.
Zurück zum Zitat Rice JR, Gu JC (1983) Earthquake aftereffects and triggered seismic phenomena. Pure Appl Geophys 121:187–219 Rice JR, Gu JC (1983) Earthquake aftereffects and triggered seismic phenomena. Pure Appl Geophys 121:187–219
118.
Zurück zum Zitat Perfettini H, Schmittbuhl J (2001) Periodic loading on a creeping fault: Implications for tides. Geophys Res Lett 28:435–438 Perfettini H, Schmittbuhl J (2001) Periodic loading on a creeping fault: Implications for tides. Geophys Res Lett 28:435–438
119.
Zurück zum Zitat Shibazaki B, Shimamoto T (2007) Modelling of short‐interval silent slip events in deeper subduction interfaces considering the frictional properties at the unstable‐stable transition regime. Geophys J Int 171(1):191–205 Shibazaki B, Shimamoto T (2007) Modelling of short‐interval silent slip events in deeper subduction interfaces considering the frictional properties at the unstable‐stable transition regime. Geophys J Int 171(1):191–205
120.
Zurück zum Zitat Elsworth D, Day SJ (1999) Flank collapse triggered by intrusion: the Canarian and Cape Verde Archipelagoes. J Volcan Geotherm Res 94:323–340 Elsworth D, Day SJ (1999) Flank collapse triggered by intrusion: the Canarian and Cape Verde Archipelagoes. J Volcan Geotherm Res 94:323–340
121.
Zurück zum Zitat Cervelli P et al (2002) The 12 September 1999 upper east rift zone dike intrusion at Kilauea Volcano, Hawaii. J Geophys Res B: Solid Earth 107:3-1–3-13 Cervelli P et al (2002) The 12 September 1999 upper east rift zone dike intrusion at Kilauea Volcano, Hawaii. J Geophys Res B: Solid Earth 107:3-1–3-13
122.
Zurück zum Zitat Owen S et al (2000) January 30, 1997 eruptive event on Kilauea Volcano, Hawaii, as monitored by continuous GPS. Geophys Res Lett 27:2757–2760 Owen S et al (2000) January 30, 1997 eruptive event on Kilauea Volcano, Hawaii, as monitored by continuous GPS. Geophys Res Lett 27:2757–2760
123.
Zurück zum Zitat McMurtry GM, Watts P, Fryer GJ, Smith JR, Imamura F (2004) Giant landslides, mega‐tsunamis, and paleo-sea level in the Hawaiian Islands. Mar Geol 203:219–233 McMurtry GM, Watts P, Fryer GJ, Smith JR, Imamura F (2004) Giant landslides, mega‐tsunamis, and paleo-sea level in the Hawaiian Islands. Mar Geol 203:219–233
124.
Zurück zum Zitat Ward S (2002) Slip‐sliding away. Nature 415:973–974 Ward S (2002) Slip‐sliding away. Nature 415:973–974
125.
Zurück zum Zitat Frye D et al (2006) An Acoustically Linked Moored–Buoy Ocean Observatory. EOS Trans AGU 87:213–218 Frye D et al (2006) An Acoustically Linked Moored–Buoy Ocean Observatory. EOS Trans AGU 87:213–218
Metadaten
Titel
Submarine Landslides and Slow Earthquakes: Monitoring Motion with GPS and Seafloor Geodesy
verfasst von
Benjamin A. Brooks
James H. Foster
Jeffrey J. McGuire
Mark Behn
Copyright-Jahr
2011
DOI
https://doi.org/10.1007/978-1-4419-7695-6_48